Discrete element method simulation of granular flow on horizontalturn
Hao Wang-jun
Abstract
Hao Wang-jun
Abstract
In order to study the dynamic characteristics of the granular flow on horizontal turn during material conveyance and the action mechanism of the material granule on the conveger belt,a discrete element model was built for the horizontal turn conveyance by the nonlinear Hertz Mimdlin contact model based on the theory of discrete element method. By simulating the average speed of the tested granule at different belt angular velocities,a set of numerical values close to the calculated tangential speed of the middle of the conveyer belt were obtained,it showed that the introduced contact model and the physical parameters of the material are correct. The dynamic characteristics of 2 groups of granule element under 4 rolling friction factors were investigated. It was found that the average speed of the granule is irrelevant to the granule element and the rolling friction factor. The effects of the granule flow rate and its distribution on the lateral pressure distribution on the outside wall of the conveyer belt were simulated under the belt acceleration,and the results showed that the average lateral pressure increases along with the belt speed,and the maximal pressure sharply increases nonlinerly.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In order to study the dynamic characteristics of the granular flow on horizontal turn during material conveyance and the action mechanism of the material granule on the conveger belt,a discrete element model was built for the horizontal turn conveyance by the nonlinear Hertz Mimdlin contact model based on the theory of discrete element method. By simulating the average speed of the tested granule at different belt angular velocities,a set of numerical values close to the calculated tangential speed of the middle of the conveyer belt were obtained,it showed that the introduced contact model and the physical parameters of the material are correct. The dynamic characteristics of 2 groups of granule element under 4 rolling friction factors were investigated. It was found that the average speed of the granule is irrelevant to the granule element and the rolling friction factor. The effects of the granule flow rate and its distribution on the lateral pressure distribution on the outside wall of the conveyer belt were simulated under the belt acceleration,and the results showed that the average lateral pressure increases along with the belt speed,and the maximal pressure sharply increases nonlinerly.
Key concepts: Discrete element method, Granule (geology), Mechanics, Granular material, Finite element method, Materials science, Nonlinear system, Engineering